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Application of Improved Fuzzy Immune PID Controller to Bending Control System

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Abstract

Based on the hydraulic bending control system, the electrohydraulic servo pressure control simulation model is built. Taking into account of the inadequacy of P-type immune feedback controller, an improved fuzzy immune PID controller is put forward. Drawing on immune feedback principle of biological immune system, the P-type immune feedback controller is connected with conventional PID controller in series and then in parallel with design fuzzy immune PID controller. The controller parameters can be adjusted on line by the rules of immune feedback controller and fuzzy controller. In order to gain the optimal parameters of the controller, the parameters of the controller are off-line optimized by the best multiple optimal model PSO algorithm. The simulation results indicate that the method has characteristics of small overshoot, short adjusting time and strong anti-interference ability and robustness. The quality of the strip shape can be further improved.

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Correspondence to **n-yi Ren.

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Foundation Item: Item Sponsored by National Natural Science Foundation of China (50534020); National Key Technology Research and Development Program in 11th Five-Year Plan of China (2007BAF02B12)

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Ren, Xy., Du, Fs., Huang, Hg. et al. Application of Improved Fuzzy Immune PID Controller to Bending Control System. J. Iron Steel Res. Int. 18, 28–33 (2011). https://doi.org/10.1016/S1006-706X(11)60033-2

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  • DOI: https://doi.org/10.1016/S1006-706X(11)60033-2

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